they move in a curved, snake-like path
It is electrical to thermal
A loudspeaker changes electrical energy into sound energy by converting the electrical signal into vibrations that move the speaker cone and produce sound waves.
No, brain waves are a form of electrical activity in the brain and cannot generate enough energy to physically move objects. Brain waves are used for communication within the brain and are not strong enough to affect external objects.
Different types of waves move in different patterns. Ocean waves move in a circular pattern while sound waves move in a sinusoidal pattern.
A microphone is a device that converts sound energy into electrical energy. Sound waves cause a diaphragm in the microphone to move, which then generates an electrical signal that represents the sound.
A microphone works by converting sound waves into electrical signals. When sound waves hit the microphone's diaphragm, it vibrates and causes a coil or capacitor to move, creating an electrical signal that represents the sound. This signal is then transmitted to an amplifier or recording device.
In a microphone, mechanical energy from sound waves causes a diaphragm to move. This movement induces a change in the magnetic field of a transducer, such as a coil of wire around a magnet, which generates an electrical signal proportional to the sound waves. This electrical signal can then be amplified and transmitted.
Light waves carry both electrical and magnetic energy, as they are electromagnetic waves. Sound waves do not carry electrical or magnetic energy; instead, they are mechanical waves that propagate through a medium, typically air.
A microphone is typically used to convert sound waves into electrical signals. The microphone's diaphragm vibrates in response to sound waves, which causes a coil of wire to move within a magnetic field, generating an electrical current proportional to the sound waves.
An antenna picks up radio waves and converts them to electrical current
A microphone converts sound into electrical energy. When sound waves hit the microphone's diaphragm, it vibrates, causing a coil or capacitor to move within a magnetic field, generating an electrical signal that represents the sound.
A device called a microphone converts sound energy into electrical energy. Inside a microphone, sound waves cause a diaphragm to move, which changes the distance between the diaphragm and a coil or capacitor. This movement induces an electrical signal that represents the sound waves.